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Effect of reactive layered double hydroxides on the thermal and mechanical properties of LDHs/epoxy nanocomposites

机译:反应性双层氢氧化物对LDHs /环氧纳米复合材料热力学性能的影响

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摘要

LDHs particles, including LDH-amino benzoate (LDHs-AB) and LDH-carbonate (LDHs-CB) particles, were prepared with copre-cipitation method. After the intercalation of the amino benzoate, LDHs-AB particles have reactive and hydrophobic properties. In the preparation of the LDHs-AB/epoxy nanocomposites, the pre-intercalation of the EPON 828 resin into the LDHs-AB interlayer galleries prior to the addition of DDM curing agent was performed. Subsequently, after the addition of the DDM monomers, cross-linking polymerization was performed in the LDHs-AB intragalleries. It expands the interlayer space and well separates these nanolayers from one another to achieve the exfoliated nanocomposites. In addition, the strong chemical bondings formed from the reaction of the reactive LDHs-AB nanolayers and epoxy molecules lead to excellent compatible nanocomposites. Accordingly, exfoliated and compatible LDHs-AB/epoxy nanocomposites exhibit outstanding performance in thermal and mechanical properties compared to the pristine epoxy resin. On the contrary, LDHs-CB/epoxy nanocomposites exhibit a little enhancement on their properties because of the stacked lamellar LDHs-CB particles and weak compatibility in the epoxy nanocomposites.
机译:采用共沉淀法制备了LDHs颗粒,包括LDH-氨基苯甲酸酯(LDHs-AB)和LDH-碳酸酯(LDHs-CB)颗粒。插入氨基苯甲酸酯后,LDHs-AB颗粒具有反应性和疏水性。在制备LDHs-AB /环氧纳米复合材料时,在添加DDM固化剂之前,先将EPON 828树脂预先插入LDHs-AB中间层通道中。随后,在添加DDM单体之后,在LDHs-AB内画廊中进行交联聚合。它扩大了层间空间,并很好地将这些纳米层彼此分离,从而获得了脱落的纳米复合材料。另外,由反应性LDHs-AB纳米层与环氧分子的反应形成的牢固的化学键导致优异的相容性纳米复合材料。因此,与原始环氧树脂相比,剥离和相容的LDHs-AB /环氧纳米复合材料在热和机械性能方面表现出出色的性能。相反,由于堆叠的层状LDHs-CB颗粒和在环氧纳米复合物中的弱相容性,LDHs-CB /环氧纳米复合材料的性能略有提高。

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